GDI-HCCI发动机负气门重叠期喷油正时的影响

Sok Ratnak, Jin Kusaka, Y. Daisho, K. Yoshimura, K. Nakama
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引用次数: 4

摘要

汽油直喷均质增压压缩(GDI-HCCI)燃烧是通过提前关闭排气阀来捕获热残余气体并结合直接燃油喷射来实现的。燃烧采用多点自燃化学控制,其主燃烧阶段可通过燃油直喷定时控制。本文研究了单脉冲喷射正时对增压GDI-HCCI内燃机的影响,采用四冲程单缸发动机和侧装式直接喷油器。研究了一次基准燃料PRF90在近化学计量增压条件下的喷射。在低氧浓度下燃料重整时,燃油在负气门重叠(NVO)或再压缩期间喷射,对于均质混合气,燃油喷射延迟到进气行程。研究发现,与进气冲程的延迟喷油相比,NVO阶段的提前喷油能促进燃烧相位的变化。由于增压冷却效应,进气冲程燃油喷射的燃烧速率明显低于NVO喷射。通过模拟具有多种化学反应机理的零维燃烧模拟,从喷油时间对中间物质世代的影响提供化学认识。通过计算发现,在NVO注入期间形成了C2H4、C3H6、CH4和H2等物质。单脉冲喷射时间对燃烧特性的影响,如压力上升速率,燃烧稳定性和排放也在本研究中讨论。
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Effect of Fuel Injection Timing During Negative Valve Overlap Period on a GDI-HCCI Engine
Gasoline Direct Injection Homogeneous Charge Compression (GDI-HCCI) combustion is achieved by closing early the exhaust valves for trapping hot residual gases combined with direct fuel injection. The combustion is chemically controlled by multi-point auto-ignition which its main combustion phase can be controlled by direct injection timing of fuel. This work investigates the effect of single pulse injection timing on a supercharged GDI-HCCI combustion engine by using a four-stroke single cylinder engine with a side-mounted direct fuel injector. Injection of primary reference fuel PRF90 under the near-stoichiometric-boosted condition is studied. The fuel is injected during negative valve overlap (NVO) or recompression period for fuel reformation under low oxygen concentration and the injection is retarded to intake stroke for the homogeneous mixture. It is found that the early fuel injection in NVO period advances the combustion phasing compared with the retarded injection in the intake stroke. Noticeable slower combustion rate from intake stroke fuel injection is obtained compared with the NVO injection due to charge cooling effect. Zero-dimensional combustion simulations with multiple chemical reaction mechanisms are simulated to provide chemical understanding from the effect of fuel injection timing on intermediate species generations. The species such as C2H4, C3H6, CH4, and H2 are found to be formed during the NVO injection period from the calculations. The effects of single pulse injection timings on combustion characteristics such pressure rise rate, combustion stability, and emissions are also discussed in this study.
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